首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Spatially Asymmetric Increase in Hot Electron Fraction in the Io Plasma Torus During Volcanically Active Period Revealed by Observations by Hisaki/EXCEED From November 2014 to May 2015
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Spatially Asymmetric Increase in Hot Electron Fraction in the Io Plasma Torus During Volcanically Active Period Revealed by Observations by Hisaki/EXCEED From November 2014 to May 2015

机译:空间不对称热电子的增加分数在Io等离子体环面火山活跃的时期了观察Hisaki /超过从2014年11月2015年5月

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摘要

The satellite Io, which has volcanoes and is located at 5.9 R_J from the center of Jupiter, is a powerful plasma source in the magnetosphere. The heavy ions originating from Io form a torus-like structure and emit radiation. The pickup energy and hot electrons are believed to power the Io plasma torus. Voyager data showed that a trace amount of hot electrons (at several hundreds of eV) exist in the torus. The origin of hot electrons, that is, plasma heating and/or transport mechanisms, have been mentioned in previous research. However, the contribution of each mechanism toward supplying hot electrons remains poorly understood. To address this issue, we explored the time variation and spatial structure of hot electrons by spectroscopic observations using the Hisaki satellite. In this study, the radial distributions of plasma densities and temperatures were derived from the emission line intensities in the extreme ultraviolet range of day of year (DOY) 331 in 2014 to DOY 134 in 2015, which includes the Io's volcanically active period. We found that hot electrons inside the torus began to increase particularly on the duskside ~40 days after the onset of volcanic activity. This result suggests that the mass increase in the torus with volcanic activity enhanced the plasma transport from the outside within a specific region or via a local heating process.
机译:卫星Io,火山和位于5.9 R_J木星的中心,一个强大的等离子体源的磁场。沉重的离子来自Io形成torus-like结构和辐射。传感器电子被认为能源和热Io等离子体环面。微量热的电子(几家数以百计的eV)存在于环面。热电子,即等离子体加热和/或传输机制,已经提到先前的研究。对每个机制提供热电子仍然知之甚少。我们探讨了时间变化和空间热结构电子光谱使用Hisaki卫星观测。研究表明,等离子体的径向分布密度和温度都是派生的发射谱线强度的极端紫外线的范围(机灵)331年的一天机灵2014年到134年的2015人,包括Io火山活跃的时期。电子在环面开始增加特别是在duskside ~ 40天之后爆发的火山活动。与火山环质量增加活动提高了等离子体传输的在一个特定地区或通过当地外加热过程。

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